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核孔复合体在沉默端粒染色质的组织中的作用。

Nuclear pore complexes in the organization of silent telomeric chromatin.

作者信息

Galy V, Olivo-Marin J C, Scherthan H, Doye V, Rascalou N, Nehrbass U

机构信息

Laboratoire de Biologie Cellulaire du Noyau, Institut Pasteur, CNRS URA 1773, Paris, France.

出版信息

Nature. 2000 Jan 6;403(6765):108-12. doi: 10.1038/47528.

Abstract

The functional regulation of chromatin is closely related to its spatial organization within the nucleus. In yeast, perinuclear chromatin domains constitute areas of transcriptional repression. These 'silent' domains are defined by the presence of perinuclear telomere clusters. The only protein found to be involved in the peripheral localization of telomeres is Yku70/Yku80. This conserved heterodimer can bind telomeres and functions in both repair of DNA double-strand breaks and telomere maintenance. These findings, however, do not address the underlying structural basis of perinuclear silent domains. Here we show that nuclear-pore-complex extensions formed by the conserved TPR homologues Mlp1 and Mlp2 are responsible for the structural and functional organization of perinuclear chromatin. Loss of MLP2 results in a severe deficiency in the repair of double-strand breaks. Furthermore, double deletion of MLP1 and MLP2 disrupts the clustering of perinuclear telomeres and releases telomeric gene repression. These effects are probably mediated through the interaction with Yku70. Mlp2 physically tethers Yku70 to the nuclear periphery, thus forming a link between chromatin and the nuclear envelope. We show, moreover, that this structural link is docked to nuclear-pore complexes through a cleavable nucleoporin, Nup145. We propose that, through these interactions, nuclear-pore complexes organize a nuclear subdomain that is intimately involved in the regulation of chromatin metabolism.

摘要

染色质的功能调控与其在细胞核内的空间组织密切相关。在酵母中,核周染色质结构域构成转录抑制区域。这些“沉默”结构域由核周端粒簇的存在所界定。唯一被发现参与端粒外周定位的蛋白质是Yku70/Yku80。这种保守的异源二聚体能够结合端粒,并在DNA双链断裂修复和端粒维持中发挥作用。然而,这些发现并未涉及核周沉默结构域潜在的结构基础。在此我们表明,由保守的TPR同源物Mlp1和Mlp2形成的核孔复合体延伸结构负责核周染色质的结构和功能组织。Mlp2的缺失导致双链断裂修复严重缺陷。此外,Mlp1和Mlp2的双缺失破坏了核周端粒的聚集,并解除了端粒基因的抑制。这些效应可能是通过与Yku70的相互作用介导的。Mlp2将Yku70物理性地连接到核周边,从而在染色质与核膜之间形成一个连接。此外,我们表明这种结构连接通过一种可切割的核孔蛋白Nup145与核孔复合体对接。我们提出,通过这些相互作用,核孔复合体组织了一个紧密参与染色质代谢调控的核亚结构域。

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